WO2016019658A1 - 一种液晶显示器及其液晶显示器下基板组件 - Google Patents

一种液晶显示器及其液晶显示器下基板组件 Download PDF

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Publication number
WO2016019658A1
WO2016019658A1 PCT/CN2014/092473 CN2014092473W WO2016019658A1 WO 2016019658 A1 WO2016019658 A1 WO 2016019658A1 CN 2014092473 W CN2014092473 W CN 2014092473W WO 2016019658 A1 WO2016019658 A1 WO 2016019658A1
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Prior art keywords
phase
line
liquid crystal
crystal display
phase matching
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Ceased
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PCT/CN2014/092473
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English (en)
French (fr)
Inventor
赵国
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TCL China Star Optoelectronics Technology Co Ltd
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Shenzhen China Star Optoelectronics Technology Co Ltd
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Priority to US14/423,414 priority Critical patent/US9791751B2/en
Publication of WO2016019658A1 publication Critical patent/WO2016019658A1/zh
Anticipated expiration legal-status Critical
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    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1345Conductors connecting electrodes to cell terminals
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1345Conductors connecting electrodes to cell terminals
    • G02F1/13458Terminal pads
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/136Liquid crystal cells structurally associated with a semi-conducting layer or substrate, e.g. cells forming part of an integrated circuit
    • G02F1/1362Active matrix addressed cells
    • G02F1/136286Wiring, e.g. gate line, drain line

Definitions

  • the present invention relates to the field of printing technology, and in particular, to a liquid crystal display and a liquid crystal display lower substrate assembly thereof.
  • the liquid crystal display is one of the most widely used flat panel displays, including two display panels and a liquid crystal interposed between the two display panels.
  • the two display panels are an array substrate assembly and a color filter substrate assembly.
  • more and more phase-matching lines are arranged on the array substrate assembly of the liquid crystal display, and therefore, the phenomenon of phase-matching of the phase-matching lines is inevitable. If a line jump occurs when the voltage is supplied to the phase matching line of the color filter substrate, static electricity is generated at the line jumper, thereby affecting the electric field distribution between the liquid crystal display array substrate assembly and the color filter substrate assembly.
  • the liquid crystal alignment between the liquid crystal display array substrate assembly and the color filter substrate assembly is poor.
  • the technical problem to be solved by the present invention is to provide a liquid crystal display lower substrate assembly and a liquid crystal display to avoid the problem of line bridging, thereby avoiding the problem of poor liquid crystal phase matching.
  • the invention provides a liquid crystal display lower substrate assembly for assembling with a substrate assembly on a liquid crystal display, the liquid crystal display lower substrate assembly comprising a carrier plate, a first phase matching pad, a first phase matching line and a first group having a conductive function transfer pad, the first phase matching pad, the first phase matching line and the first group of transfer pads are disposed on the carrier board, and the first phase matching pad electrically connects the first a phase line for receiving a first voltage signal and transmitting the first voltage signal to the first phase line, the first set of transfer pads being electrically connected to the first phase line at intervals Upper, for receiving the first voltage signal to After assembling the liquid crystal display lower substrate assembly and the liquid crystal display upper substrate assembly, transmitting the first voltage signal to a first group of common electrodes of the first upper substrate of the liquid crystal display upper substrate assembly, the first group
  • the connecting portion of the transfer pad to the first phase line and the first set of transfer pads do not intersect any of the phase lines on the carrier board except the first phase line.
  • the liquid crystal display lower substrate assembly further includes a second phase matching pad, a second phase matching line, and a second set of conductive pads having a conductive function, the second phase matching pad, the second phase matching line, and The second set of transfer pads are disposed on the carrier board, and the second phase matching pad is electrically connected to the second phase line to receive the first voltage signal, and the first voltage is Transmitting a signal to the second phase-matching line, the second set of transfer pads being electrically connected to the second phase-matched line at intervals to receive the first voltage signal to serve as a lower substrate of the liquid crystal display After assembling the component with the substrate assembly on the liquid crystal display, transmitting the first voltage signal to a second set of common electrodes of the first upper substrate of the substrate assembly on the liquid crystal display, the second set of transfer pads and The connecting portion of the second phase line and the second set of transfer pads do not intersect any of the phase lines on the carrier board except the second phase line.
  • first phase line and the second phase line are arranged around the periphery of the carrier board, and between each of the two connection pads in the first and second group of transfer pads The intervals are the same such that the first and second sets of transfer pads are evenly arranged on the periphery of the carrier plate.
  • the liquid crystal display lower substrate assembly further includes a third phase matching pad, wherein the third phase matching pad is disposed on the carrier plate, and the first phase matching pad and the second phase matching pad are located at the a first side of the carrier plate, the third phase matching pad is located on a second side of the carrier plate opposite to the first side, and the first end of the first phase line is electrically connected to the first side a phase matching pad, the second end of the first phase line is electrically connected to the third phase matching pad, and receives the first through the first phase matching pad and the third phase matching pad respectively And transmitting the first voltage signal to the first phase line to transmit the first voltage signal to the liquid crystal display lower substrate assembly and the liquid crystal display upper substrate assembly a first set of common electrodes of the first upper substrate and a first set of common electrodes of the second upper substrate of the substrate assembly on the liquid crystal display.
  • the liquid crystal display lower substrate assembly further includes a fourth phase matching pad, the fourth phase matching pad is disposed on the carrier plate, and is located at a second side of the carrier plate, the second phase matching line The first end is electrically connected to the second phase matching pad, and the second end of the second phase line is electrically connected to the fourth phase matching pad to respectively pass the second and fourth phase matching pads Receiving the first voltage signal and the first voltage Transmitting a signal to the second phase line to transmit the first voltage signal to the first substrate assembly of the liquid crystal display after the liquid crystal display lower substrate assembly and the liquid crystal display upper substrate assembly are assembled a second set of common electrodes of the upper substrate and a second set of common electrodes of the second upper substrate.
  • the liquid crystal display lower substrate assembly further includes a first lower substrate, a second lower substrate, a fifth phase matching pad, a sixth phase matching pad, a seventh phase matching pad, an eighth phase matching pad, and a ninth phase matching pad.
  • the tenth phase matching pad is disposed on the carrier board, the first lower substrate corresponds to the first upper substrate, the second lower substrate corresponds to the second upper substrate, and the third a first end of the phase line is electrically connected to the fifth phase matching pad, and a second end of the third phase matching line is electrically connected to the sixth phase matching pad, and the first end of the fourth phase matching line Electrically connected to the seventh phase matching pad, the second end of
  • each of the first set of transfer pads is connected to the first phase line by a first wire
  • each of the second set of transfer pads passes the first Two wires are connected to the second phase line
  • the first wire is a connecting portion between the first group of the transfer pads and the first phase line
  • the second wire is the second wire a connecting portion between the group transfer pad and the second phase line.
  • the first set of transfer pads are disposed on the first phase line
  • the second set of transfer pads are disposed on the second phase line
  • the first phase line and the first phase line a portion where the first set of transfer pads overlap is a connection portion between the first set of transfer pads and the first phase line
  • the second phase line overlaps with the second set of transfer pads
  • a portion is a connecting portion between the second set of transfer pads and the second phase line.
  • the present invention also provides a liquid crystal display comprising a substrate assembly on a liquid crystal display and a lower substrate assembly of a liquid crystal display, wherein the substrate assembly on the liquid crystal display comprises a first carrier plate and is disposed on the first bearing a first upper substrate on the carrier, the liquid crystal display lower substrate assembly includes a second carrier, a first phase matching pad, a first phase line, and a first set of conductive pads having a conductive function, the first The phase pad, the first phase matching line and the first set of transfer pads are both disposed on the second carrier board, and the first phase matching pad is electrically connected to the first phase line to receive the first voltage Transmitting and transmitting the first voltage signal to the first phase line, the first set of transfer pads being electrically connected to the first phase line at intervals for receiving the first voltage Transmitting, after the liquid crystal display lower substrate assembly and the liquid crystal display upper substrate assembly, transmitting the first voltage signal to a first group of common electrodes of the first upper substrate of the liquid crystal display upper substrate assembly, The connecting portion of the first set
  • the liquid crystal display lower substrate assembly further includes a second phase matching pad, a second phase matching line, and a second set of conductive pads having a conductive function, the second phase matching pad, the second phase matching line, and The second set of transfer pads are disposed on the second carrier board, and the second phase matching pad is electrically connected to the second phase line to receive the first voltage signal, and the first a voltage signal is transmitted to the second phase line, and the second set of transfer pads are electrically connected to the second phase line at intervals to receive the first voltage signal to be when the liquid crystal display After assembling the lower substrate assembly and the substrate assembly on the liquid crystal display, transmitting the first voltage signal to a second set of common electrodes of the first upper substrate of the upper substrate assembly of the liquid crystal display, the second set of transfer pads The connecting portion with the second phase line and the second set of transfer pads are not intersected with any phase line other than the second phase line on the second carrier.
  • first phase line and the second phase line are arranged around the periphery of the carrier board, and between each of the two adjacent ones of the first and second sets of adapter pads The intervals are equal such that the first and second sets of transfer pads are evenly arranged on the periphery of the carrier plate.
  • each of the first set of transfer pads is connected to the first phase line by a first wire
  • each of the second set of transfer pads passes the first Two wires are connected to the second phase line
  • the first wire is a connecting portion between the first group of the transfer pads and the first phase line
  • the second wire is the second wire a connecting portion between the group transfer pad and the second phase line.
  • the first set of transfer pads are disposed on the first phase line
  • the second set of transfer pads are disposed on the second phase line
  • the first phase line and the first phase line a portion where the first set of transfer pads overlap is a connection portion between the first set of transfer pads and the first phase line, the second phase line and the first The portion where the two sets of transfer pads overlap is the connection portion between the second set of transfer pads and the second phase line.
  • the liquid crystal display lower substrate assembly of the invention comprises a carrier board, a first phase matching pad, a first phase matching line and a first set of transfer pads having a conductive function.
  • the first phase matching pad, the first phase matching line and the first set of transfer pads are all disposed on the carrier board.
  • the first phase matching pad electrically connects the first phase line to receive a first voltage signal and transmit the first voltage signal to the first phase line.
  • the first set of transfer pads are electrically connected to the first phase line at intervals for receiving the first voltage signal to assemble the liquid crystal display lower substrate assembly and the liquid crystal display upper substrate assembly Thereafter, the first voltage signal is transmitted to a first set of common electrodes of the first upper substrate of the substrate assembly on the liquid crystal display.
  • the connecting portion of the first set of transfer pads and the first phase matching line and the first set of transfer pads are not associated with any phase of the carrier board except the first phase line.
  • the intersection of the lines indicates that the connection portion of the first set of transfer pads and the first phase line and the first set of transfer pads are not connected to the carrier board except the first phase line. Any other phase line. Therefore, no static electricity is generated at the connection portion of the first set of transfer pads and the first phase line and the first set of transfer pads, that is, the liquid crystal display lower substrate assembly and the The electric field distribution between the substrate components on the liquid crystal display, thereby avoiding the problem of poor alignment of the liquid crystal disposed between the lower substrate assembly of the liquid crystal display and the substrate assembly on the liquid crystal display.
  • FIG. 1 is a schematic view of a lower substrate assembly of a liquid crystal display according to a first preferred embodiment of the present invention.
  • FIG. 2 is a schematic view of a lower substrate assembly of a liquid crystal display according to a second preferred embodiment of the present invention.
  • FIG 3 is a schematic view of a lower substrate assembly of a liquid crystal display according to a third preferred embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a liquid crystal display according to a fourth preferred embodiment of the present invention.
  • spatially relative terms such as “under”, “below”, “lower”, “above”, “upper”, etc. may be used herein to describe one element as shown in the drawings. Or the relationship of a feature to another component or feature(s). It will be understood that the spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation shown. For example, elements that are described as “under” or “beneath” other elements or features are “above” other elements or features. Thus, the exemplary term “.” The device may be otherwise oriented (rotated 90 degrees or other orientation) and the spatial relativity descriptors used herein are interpreted accordingly.
  • a first preferred embodiment of the present invention provides a liquid crystal display lower substrate assembly 100 .
  • the liquid crystal display lower substrate assembly 100 is used to assemble with a liquid crystal display upper substrate assembly (not shown) to constitute a liquid crystal display.
  • the liquid crystal display lower substrate assembly 100 includes a carrier board 10, a first phase matching pad 11, a first phase matching line 12, and a first set of conductive pads 13 having a conductive function.
  • the first phase matching pad 11 , the first phase matching line 12 and the first set of transfer pads 13 are all disposed on the carrier plate 10 .
  • the first phase matching pad 11 is electrically connected to the first phase line 12 to receive a first voltage signal and transmit the first voltage signal to the first phase line 12 .
  • the first set of transfer pads 13 are electrically connected to the first phase line 12 at intervals for receiving the first voltage signal to be on the liquid crystal display lower substrate assembly 100 and the liquid crystal display After the substrate assembly is assembled, the first voltage signal is transmitted to a first set of common electrodes of the first upper substrate of the substrate assembly on the liquid crystal display.
  • the connection portion 14 of the first set of transfer pads 13 and the first phase line 12 and the first set of transfer pads 13 are not separated from the carrier plate 10 by the first phase line 12 Any other phase line other than the intersection.
  • the carrier board 10 is further provided with a plurality of phase matching lines (not shown) for phase-matching the liquid crystal between the liquid crystal display lower substrate assembly 100 and the substrate assembly on the liquid crystal display.
  • the connection portion 14 of the first set of transfer pads 13 and the first phase line 12 and the first set of transfer pads 13 are not separated from the carrier plate 10 by the first phase line 12
  • the intersection of any other phase line other than the other indicates that the connecting portion 14 of the first set of transfer pads 13 and the first phase line 12 and the first set of transfer pads 13 do not bridge the carrier board A number of phase lines set on 10.
  • the liquid crystal display lower substrate assembly is an array substrate assembly.
  • the substrate assembly on the liquid crystal display is a color filter substrate assembly.
  • the voltage on the color filter substrate of the color filter substrate assembly is provided by the array substrate assembly, so the first voltage signal needs to be input from the first phase matching pad to the common electrode on the color filter substrate.
  • the carrier plate 10 is an insulating plate body, preferably a glass plate.
  • the array substrate assembly further includes an array substrate.
  • the array substrate is disposed on the carrier board 10 to correspond to the color filter substrate.
  • the color filter substrate assembly also includes a carrier board and a color filter substrate disposed on the carrier board.
  • the liquid crystal display lower substrate assembly 100 is not necessarily limited to the array substrate assembly, and the voltage on the array substrate needs to be improved according to actual needs or advances in technology.
  • the structure of the liquid crystal display lower substrate assembly 100 is also applicable to the color filter substrate assembly, and the liquid crystal display lower substrate assembly 100 may also be the color filter substrate assembly.
  • the liquid crystal display lower substrate assembly 100 includes a carrier board 10, a first phase matching pad 11, a first phase matching line 12, and a first set of conductive pads 13 having a conductive function.
  • the first phase matching pad 11 , the first phase matching line 12 and the first set of transfer pads 13 are all disposed on the carrier plate 10 .
  • the first phase matching pad 11 is electrically connected to the first phase line 12 to receive a first voltage signal and transmit the first voltage signal to the first phase line 12 .
  • the first set of transfer pads 13 are electrically connected to the first phase line 12 at intervals for receiving the first voltage signal to be on the liquid crystal display lower substrate assembly 100 and the liquid crystal display After the substrate assembly is assembled, the first voltage signal is transmitted to a first set of common electrodes of the first upper substrate of the substrate assembly on the liquid crystal display.
  • the connection portion 14 of the first set of transfer pads 13 and the first phase line 12 and the first set of transfer pads 13 are not separated from the carrier plate 10 by the first phase line 12
  • the intersection of any other phase-matching lines, indicating that the connecting portion 14 of the first set of the transfer pads 13 and the first phase-matching line 12 and the first set of the transfer pads 13 are not bridged to the carrier board 10 on any phase line.
  • each of the first set of transfer pads 13 is connected to the first phase line 12 by a first wire.
  • the first wire is a connecting portion 14 between the first set of transfer pads 13 and the first phase line 12 .
  • the first set of transfer pads 13 may also be disposed on the first phase line 12 .
  • a portion of the first phase matching line 12 overlapping the first set of transition pads 13 is a connecting portion 14 between the first set of transfer pads 13 and the first phase matching line 12.
  • a second preferred embodiment of the present invention provides a liquid crystal display lower substrate assembly 200.
  • the liquid crystal display lower substrate assembly 200 provided by the second preferred embodiment is similar to the liquid crystal display lower substrate 100 provided by the first preferred embodiment, and the difference is that in the second preferred embodiment, the liquid crystal
  • the display lower substrate assembly 200 further includes a second phase matching pad 210 and a second phase matching line 220 and a second set of transfer pads 230 having a conductive function.
  • the second phase matching pad 210, the second phase matching line 220 and the second set of transfer pads 230 are all disposed on the carrier board 10.
  • the second phase matching pad 210 is electrically connected to the second phase matching line 220 to receive the first voltage signal and transmit the first voltage signal to the second phase matching line 220.
  • the second set of transfer pads 230 are electrically connected to the second phase line 220 at intervals to receive the first voltage signal for the liquid crystal display lower substrate assembly 200 and the liquid crystal display upper substrate After the assembly is assembled, the first voltage signal is transmitted to a second set of common electrodes of the first upper substrate of the substrate assembly on the liquid crystal display.
  • the connecting portion 240 of the second set of the transfer pads 230 and the second phase line 220 and the second set of the transfer pads 230 are not separated from the carrier board 10 by the second phase line 220. Any other phase line other than the intersection.
  • Each of the second set of transfer pads 230 is connected to the second phase line 220 by a second wire.
  • the second wire is a connecting portion 240 between the second set of transfer pads 230 and the second phase line 220.
  • the second set of transfer pads 230 may also be disposed on the second phase line 220.
  • a portion of the second phase matching line 220 overlapping the second set of transition pads 230 is a connecting portion 240 between the second set of transition pads 230 and the second phase matching line 220.
  • connection portion 240 of the second group of the transfer pads 230 and the second phase line 220 and the second group of the transfer pads 230 are not separated from the carrier board 10
  • the intersection of any other phase lines other than the second phase line indicates that the connection portion 240 of the second group of the transfer pads 230 and the second phase line 220 and the second group of the transfer pads 230 are not crossed.
  • Connect any phase line on the carrier board 10. Therefore, no static electricity is generated at the connection portion 240 of the second set of the transfer pads 230 and the second phase matching line 220 and the second set of the transfer pads 230, that is, the liquid crystal display lower substrate is not affected.
  • the electric field distribution between the assembly 200 and the substrate assembly on the liquid crystal display avoids the problem of poor alignment of the liquid crystal disposed between the liquid crystal display lower substrate assembly 200 and the liquid crystal display upper substrate assembly.
  • the liquid crystal display lower substrate assembly 200 adds the second phase line 220 and the second group of the transfer pads 230 electrically connected to the second phase line 220, that is, the substrate on the liquid crystal display.
  • a second set of common electrodes of the component provides a voltage. Therefore, the liquid crystal display lower substrate assembly 200 enhances the uniformity of the voltage of the substrate on the liquid crystal display.
  • first phase line 12 and the second phase line 220 are arranged around the circumference of the carrier board 10. Between each of the two transfer pads of the first and second sets of transfer pads 13 and 230 The spacing is the same, so that the first and second sets of transfer pads 13 and 230 are evenly arranged on the periphery of the carrier board 10, thereby further enhancing the uniformity of the voltage on the substrate assembly on the liquid crystal display. .
  • a third preferred embodiment of the present invention provides a liquid crystal display lower substrate assembly 300.
  • the liquid crystal display lower substrate assembly 300 provided by the third preferred embodiment is similar to the liquid crystal display lower substrate 200 provided by the second preferred embodiment, and the difference is that in the third preferred embodiment, the liquid crystal
  • the display lower substrate assembly 300 also includes a third phase matching pad 310.
  • the third phase matching pads 310 are all disposed on the carrier board 10 .
  • the first phase matching pad 13 and the second phase matching pad 230 are located on a first side of the carrier board 10 .
  • the third phase matching pad 310 is located on a second side of the carrier plate 10 opposite to the first side.
  • the first end of the first phase line 12 is electrically connected to the first phase pad 13 .
  • the second end of the first phase line 12 is electrically connected to the third phase matching pad 310, and receives the first voltage through the first phase matching pad 13 and the third phase matching pad 310, respectively. Signaling and transmitting the first voltage signal to the first phase line 12 to transmit the first voltage signal after the liquid crystal display lower substrate assembly 300 and the liquid crystal display upper substrate assembly are assembled a first set of common electrodes of the first upper substrate and a first set of common electrodes of the second upper substrate of the substrate assembly on the liquid crystal display.
  • the liquid crystal display lower substrate assembly 300 further includes a first lower substrate 320 and a second lower substrate 330.
  • the first lower substrate 320 and the second lower substrate 330 are sequentially disposed on the carrier 10 in a direction from the first side to the second side of the carrier 10 .
  • the first lower substrate 320 corresponds to the first upper substrate.
  • the second lower substrate 330 corresponds to the second upper substrate.
  • the liquid crystal display lower substrate assembly 300 in the preferred embodiment is suitable for the process stage of the liquid crystal display lower substrate.
  • the carrier board 10 has a dividing line I, and the board is divided into a first sub-board and a second sub-board, and the liquid crystal display lower substrate assembly 300 is further divided into a first portion and a second portion.
  • the functions and principles of the first part and the second part are completely the same. That is, the first lower substrate 320 is the same as the second lower substrate 330.
  • the first lower substrate 320 and the first phase matching pad 13 are located on the first sub-carrier board.
  • the second lower substrate 330 and the third phase matching pad 230 are located on the second sub-carrier plate.
  • the liquid crystal display lower substrate assembly 300 is cut along the dividing line I to form two independent liquid crystal display lower substrate assemblies, that is, two first Good implementation The liquid crystal display lower substrate assembly 100 in the formula.
  • the substrate assembly on the liquid crystal display corresponding to the liquid crystal display lower substrate assembly 300 may be cut to form corresponding two liquid crystal display upper substrate assemblies.
  • liquid crystal is injected between the liquid crystal display lower substrate assembly and the corresponding liquid crystal display upper substrate assembly to form a liquid crystal display.
  • the first phase-matching pad 13 can output the first voltage signal to the first phase-matching line in the first portion and the first-stage adapter pad in the first portion.
  • the second phase matching pad 230 may output the first voltage signal to the first phase line located in the second portion and the transfer pad located in the second portion of the first set of transfer pads to Corresponding second upper substrate.
  • the liquid crystal display lower substrate assembly 300 further includes a fourth phase matching pad 340.
  • the fourth phase matching pad 340 is disposed on the carrier board 10 and located on the second side of the carrier board 10 .
  • the first end of the second phase line 220 is electrically connected to the second phase pad 230.
  • the second end of the second phase line 220 is electrically connected to the fourth phase matching pad 340 to receive the first voltage signal through the second and fourth phase matching pads 230 and 340, respectively, and Transmitting the first voltage signal to the second phase line 220 to transmit the first voltage signal to the liquid crystal after the liquid crystal display lower substrate assembly 300 and the liquid crystal display upper substrate assembly are assembled
  • the first voltage signal passes through the second phase matching pad 230 and the second phase line located in the first portion And the transfer pad located in the first portion of the second set of transfer pads is transferred to the second set of common electrodes of the first upper substrate of the substrate assembly 300 on the liquid crystal display.
  • the first voltage signal is also transmitted through the fourth phase pad 340, the second phase line located in the second portion, and the transfer pad located in the second portion of the second set of transfer pads And a second set of common electrodes of the second upper substrate of the substrate assembly 300 on the liquid crystal display.
  • the first phase line 12 and the second phase line 220 are arranged around the periphery of the carrier board 10.
  • the spacing between each of the two connecting pads of the first and second sets of transfer pads 13 and 230 is the same, such that the first and second sets of transfer pads 13 and 230 are evenly arranged
  • the periphery of the carrier 10 is described to further enhance the uniformity of the voltage across the substrate assembly on the liquid crystal display.
  • the liquid crystal display lower substrate assembly 300 further includes a fifth phase matching pad 351, a sixth phase matching pad 352, a seventh phase matching pad 353, an eighth phase matching pad 354, a ninth phase matching pad 355, and a tenth
  • the phase pad 353, the eighth phase matching pad 354, the ninth phase matching pad 355, and the tenth phase matching pad 356 are all disposed on the carrier plate 10.
  • the first end of the third phase line 361 is electrically connected to the fifth phase matching pad 351.
  • the second end of the third phase line 361 is electrically connected to the sixth phase matching pad 352.
  • the first end of the fourth phase line 362 is electrically connected to the seventh phase matching pad 353.
  • the second end of the fourth phase line 362 is electrically connected to the eighth phase matching pad 354.
  • the first end of the fifth phase line 363 is electrically connected to the ninth phase matching pad 355.
  • the second end of the fifth phase line 363 is electrically connected to the tenth phase matching pad 356.
  • the first lower substrate 320 includes a first data line 321 , a first gate line 322 , and a first common electrode 323 .
  • the second lower substrate 330 includes a second data line 331 , a second gate line 332 , and a second common electrode 333 .
  • the first and second data lines 321 and 331 are both electrically connected to the third phase line 361.
  • the first and second gate lines 322 and 332 are both electrically connected to the fourth phase line 362.
  • the first and second common electrodes 323 and 333 are both electrically connected to the fifth phase line 363.
  • the first lower substrate 320 and the second lower substrate 330 share the third to fifth phase lines 361-363, instead of occupying three phase lines respectively, thereby reducing The number of phase lines laid on the carrier plate 10. Since the number of phase matching lines is reduced, the probability of occurrence of line bridging on the carrier board 10 is also greatly reduced, thereby reducing the possibility of occurrence of a problem of poor liquid crystal phase matching.
  • the liquid crystal display 400 includes a liquid crystal display upper substrate assembly 410 and a liquid crystal display lower substrate assembly 420.
  • the liquid crystal display upper substrate assembly 410 includes a first carrier plate (not shown) and a first upper substrate (not shown) disposed on the first carrier plate.
  • the liquid crystal display lower substrate assembly 420 may be the liquid crystal display lower substrate assembly 100 provided by the first preferred embodiment.
  • the structure and function of the liquid crystal display lower substrate assembly 420 are the same as those of the liquid crystal display lower substrate assembly 100.
  • the liquid crystal display lower substrate assembly 420 can also be The liquid crystal display lower substrate assembly 200 provided by the second preferred embodiment described above.
  • the liquid crystal display 400 further includes a liquid crystal 430.
  • the liquid crystal 430 is disposed on the liquid crystal display upper substrate assembly 410 and the liquid crystal display lower substrate assembly 420.
  • the liquid crystal display 400 provided by the present embodiment includes the liquid crystal display lower substrate assembly 100.
  • the liquid crystal display lower substrate assembly 100 includes a carrier board 10, a first phase matching pad 11, a first phase matching line 12, and a first set of conductive pads 13 having a conductive function.
  • the first phase matching pad 11 is electrically connected to the first phase line 12 to receive a first voltage signal and transmit the first voltage signal to the first phase line 12 .
  • the first set of transfer pads 13 are electrically connected to the first phase line 12 at intervals for receiving the first voltage signal to be on the liquid crystal display lower substrate assembly 100 and the liquid crystal display After the substrate assembly is assembled, the first voltage signal is transmitted to a first set of common electrodes of the first upper substrate of the substrate assembly on the liquid crystal display.
  • connection portion 14 of the first set of transfer pads 13 and the first phase line 12 and the first set of transfer pads 13 are not separated from the carrier plate 10 by the first phase line 12 Intersecting any other phase line other than (ie, without a line jump), indicating the connection portion 14 from the first set of transfer pads 13 to the first phase line 12 and the first set of transitions None of the pads 13 bridges any of the phase lines on the carrier 10 except the first phase line 12. Therefore, no static electricity is generated at the connection portion 14 of the first set of the transfer pads 13 and the first phase line 12 and the first set of the transfer pads 13 , that is, the liquid crystal display lower substrate is not affected.
  • the electric field distribution between the assembly 100 and the substrate assembly on the liquid crystal display avoids the problem of poor alignment of the liquid crystal disposed between the liquid crystal display lower substrate assembly 100 and the substrate assembly on the liquid crystal display.

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Abstract

一种液晶显示器下基板组件(100),用于与液晶显示器上基板组件进行装配,液晶显示器下基板组件(100)包括承载板(10)、第一配相垫(11)、第一配相线(12)及第一组具有导电功能的转接垫(13),第一配相垫(11)、第一配相线(12)及第一组转接垫设(13)置于承载板(10)上,第一配相垫(11)电连接第一配相线(12),以接收电压信号,并将电压信号传输至第一配相线(12),第一组转接垫(13)间隔地电连接至第一配相线上(12),用于接收电压信号,以当液晶显示器下基板组件(100)与液晶显示器上基板组件装配后,将电压信号传输至液晶显示器上基板组件的第一组公共电极,第一组转接垫(13)与第一配相线(12)的连接部分及第一组转接垫(13)均未与承载板(10)上的其他任何配相线相交,避免了液晶配相不良的问题发生。还提供了一种液晶显示器。

Description

一种液晶显示器及其液晶显示器下基板组件
本发明要求2014年8月6日递交的发明名称为“一种液晶显示器及其液晶显示器下基板组件”的申请号201410384484.4的在先申请优先权,上述在先申请的内容以引入的方式并入本文本中。
技术领域
本发明涉及印刷技术领域,尤其涉及一种液晶显示器及其液晶显示器下基板组件。
背景技术
液晶显示器是当前最广泛使用的平板显示器之一,包括两个显示面板以及插设在两个显示面板之间的液晶。所述两个显示面板为阵列基板组件及彩色滤光基板组件。随着液晶显示器的发展,液晶显示器的阵列基板组件上排布的配相线越来越多,因此,必然会出现配相线跨接的现象。若当提供电压给彩色滤波基板的配相线出现线路跨接时,则会在线路跨接处产生静电,从而影响所述液晶显示器阵列基板组件与所述彩色滤光基板组件之间的电场分布,导致所述液晶显示器阵列基板组件与所述彩色滤光基板组件之间的液晶配相不良。
发明内容
本发明所要解决的技术问题在于提供一种液晶显示器下基板组件及液晶显示器,以避免线路跨接的问题,从而避免产生液晶配相不良的问题。
为了实现上述目的,本发明实施方式提供如下技术方案:
本发明供了一种液晶显示器下基板组件,用于与液晶显示器上基板组件进行装配,所述液晶显示器下基板组件包括承载板、第一配相垫、第一配相线及第一组具有导电功能的转接垫,所述第一配相垫、所述第一配相线及第一组转接垫均设置于所述承载板上,所述第一配相垫电连接所述第一配相线,以接收第一电压信号,并将所述第一电压信号传输至所述第一配相线,所述第一组转接垫间隔地电连接至所述第一配相线上,用于接收所述第一电压信号,以当所 述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极,所述第一组转接垫与所述第一配相线的连接部分及所述第一组转接垫均未与所述承载板上除所述第一配相线以外的其他任何配相线相交。
其中,所述液晶显示器下基板组件还包括第二配相垫、第二配相线及第二组具有导电功能的转接垫,所述第二配相垫、所述第二配相线及所述第二组转接垫均设置于所述承载板上,所述第二配相垫电连接所述第二配相线,以接收所述第一电压信号,并将所述第一电压信号传输至所述第二配相线,所述第二组转接垫间隔地电连接至所述第二配相线上,以接收所述第一电压信号,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第二组公共电极,所述第二组转接垫与所述第二配相线的连接部分及所述第二组转接垫均未与所述承载板上除所述第二配相线以外的其他任何配相线相交。
其中,所述第一配相线及所述第二配相线围绕所述承载板的周边排布,所述第一及第二组转接垫中每相连的两个转接垫之间的间隔相同,从而使得所述第一及第二组转接垫均匀地排布于所述承载板的周边。
其中,所述液晶显示器下基板组件还包括第三配相垫,所述第三配相垫均设置于所述承载板上,所述第一配相垫及所述第二配相垫位于所述承载板的第一侧,所述第三配相垫位于所述承载板的与所述第一侧相对的第二侧,所述第一配相线的第一端电连接至所述第一配相垫,所述第一配相线的第二端电连接至所述第三配相垫,并分别通过所述第一配相垫及所述第三配相垫接收所述第一电压信号,并将所述第一电压信号传输至所述第一配相线,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极及第二上基板的第一组公共电极。
其中,所述液晶显示器下基板组件还包括第四配相垫,所述第四配相垫设置于所述承载板上,且位于所述承载板的第二侧,所述第二配相线的第一端电连接至所述第二配相垫,所述第二配相线的第二端电连接至所述第四配相垫,以分别通过所述第二及第四配相垫接收所述第一电压信号,并将所述第一电压 信号传输至所述第二配相线,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第二组公共电极及第二上基板的第二组公共电极。
其中,所述液晶显示器下基板组件还包括第一下基板、第二下基板、第五配相垫、第六配相垫、第七配相垫、第八配相垫、第九配相垫、第十配相垫、第三配相线、第四配相线及第五配相线,所述第一基板、所述第二基板、所述第三配相线、所述第四配相线、所述第五配相线、所述第五配相垫、所述第六配相垫、所述第七配相垫、所述第八配相垫、所述第九配相垫、所述第十配相垫均设置于所述承载板上,所述第一下基板对应所述第一上基板,所述第二下基板对应所述第二上基板,所述第三配相线的第一端电连接至所述第五配相垫,所述第三配相线的第二端电连接至所述第六配相垫,所述第四配相线的第一端电连接至所述第七配相垫,所述第四配相线的第二端电连接至所述第八配相垫,所述第五配相线的第一端电连接至所述第九配相垫,所述第五配相线的第二端电连接至所述第十配相垫,所述第一下基板包括第一数据线、第一栅线及第一公共电极,所述第二下基板包括第二数据线、第二栅线及第二公共电极,所述第一及第二数据线均电连接至所述第三配相线上,所述第一及第二栅线均电连接至所述第四配相线,所述第一及第二公共电极均电连接至所述第五配相线上。
其中,所述第一组转接垫中的每个转接垫均通过第一导线连接至所述第一配相线,所述第二组转接垫中的每个转接垫均通过第二导线连接至所述第二配相线,所述第一导线为所述第一组转接垫与所述第一配相线之间的连接部分,所述第二导线为所述第二组转接垫与所述第二配相线之间的连接部分。
其中,所述第一组转接垫设置于所述第一配相线上,所述第二组转接垫设置于所述第二配相线上,所述第一配相线与所述第一组转接垫重叠的部分为所述第一组转接垫与所述第一配相线之间的连接部分,所述第二配相线与所述第二组转接垫重叠的部分为所述第二组转接垫与所述第二配相线之间的连接部分。
本发明还提供一种液晶显示器,包括液晶显示器上基板组件及液晶显示器下基板组件,所述液晶显示器上基板组件包括第一承载板及设置于所述第一承 载板上的第一上基板,所述液晶显示器下基板组件包括第二承载板、第一配相垫、第一配相线及第一组具有导电功能的转接垫,所述第一配相垫、所述第一配相线及第一组转接垫均设置于所述第二承载板上,所述第一配相垫电连接所述第一配相线,以接收第一电压信号,并将所述第一电压信号传输至所述第一配相线,所述第一组转接垫间隔地电连接至所述第一配相线上,用于接收所述第一电压信号,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极,所述第一组转接垫与所述第一配相线的连接部分及所述第一组转接垫均未与所述第二承载板上除所述第一配相线以外的其他任何配相线相交。
其中,所述液晶显示器下基板组件还包括第二配相垫、第二配相线及第二组具有导电功能的转接垫,所述第二配相垫、所述第二配相线及所述第二组转接垫均设置于所述第二承载板上,所述第二配相垫电连接所述第二配相线,以接收所述第一电压信号,并将所述第一电压信号传输至所述第二配相线,所述第二组转接垫间隔地电连接至所述第二配相线上,以接收所述第一电压信号,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第二组公共电极,所述第二组转接垫与所述第二配相线的连接部分及所述第二组转接垫均未与所述第二承载板上除所述第二配相线以外的其他任何配相线相交。
其中,所述第一配相线及所述第二配相线围绕所述承载板的周边排布,所述第一及第二组转接垫中每相邻的两个转接垫之间的间隔相等,从而使得所述第一及第二组转接垫均匀地排布于所述承载板的周边。
其中,所述第一组转接垫中的每个转接垫均通过第一导线连接至所述第一配相线,所述第二组转接垫中的每个转接垫均通过第二导线连接至所述第二配相线,所述第一导线为所述第一组转接垫与所述第一配相线之间的连接部分,所述第二导线为所述第二组转接垫与所述第二配相线之间的连接部分。
其中,所述第一组转接垫设置于所述第一配相线上,所述第二组转接垫设置于所述第二配相线上,所述第一配相线与所述第一组转接垫重叠的部分为所述第一组转接垫与所述第一配相线之间的连接部分,所述第二配相线与所述第 二组转接垫重叠的部分为所述第二组转接垫与所述第二配相线之间的连接部分。
本发明液晶显示器下基板组件包括承载板、第一配相垫、第一配相线及第一组具有导电功能的转接垫。所述第一配相垫、所述第一配相线及第一组转接垫均设置于所述承载板上。所述第一配相垫电连接所述第一配相线,以接收第一电压信号,并将所述第一电压信号传输至所述第一配相线。所述第一组转接垫间隔地电连接至所述第一配相线上,用于接收所述第一电压信号,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极。所述第一组转接垫与所述第一配相线的连接部分及所述第一组转接垫均未与所述承载板上除所述第一配相线以外的其他任何配相线相交,表明所述第一组转接垫与所述第一配相线的连接部分及所述第一组转接垫均未跨接所述承载板上除所述第一配相线以外的其他任何配相线。因此,所述第一组转接垫与所述第一配相线的连接部分及所述第一组转接垫处不会产生静电,即不会影响所述液晶显示器下基板组件与所述液晶显示器上基板组件之间的电场分布,从而避免设置于所述液晶显示器下基板组件与所述液晶显示器上基板组件之间的液晶出现配相不良的问题。
附图说明
为了更清楚地说明本发明的技术方案,下面将对实施方式中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施方式,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以如这些附图获得其他的附图。
图1是本发明第一较佳实施方式提供的液晶显示器下基板组件的示意图。
图2是本发明第二较佳实施方式提供的液晶显示器下基板组件的示意图。
图3是本发明第三较佳实施方式提供的液晶显示器下基板组件的示意图。
图4是本发明第四较佳实施方式提供的液晶显示器的示意图。
具体实施方式
下面将结合本发明实施方式中的附图,对本发明实施方式中的技术方案进行清楚、完整地描述。
将理解,当一个元件或层被称为在另一元件或层“上”、“连接到”或“耦接到”另一元件或层时,它可以直接在另一元件或层上、直接连接到或耦接到另一元件或层,或者可以存在居间元件或层。相反,当一个元件被称为“直接在”另一元件或层上、“直接连接到”或“直接耦接到”另一元件或层时,不存在居间元件或层。相同的符合标记始终指代相同的元件。在此所用时,术语“和/或”包括一个或多个相关列举项目的任何及所有组合。
将理解,虽然这里可以使用术语第一、第二等描述各种元件、组件、区域、层和/或部分,但这些元件、组件、区域、层和/或部分不应受到这些术语限制。这些术语仅用于将一个元件、组件、区域、层或部分与另一元件、组件、区域、层或部分区别开。因此,以下讨论的第一元件、组件、区域、层或部分可以被称为第二元件、组件、区域、层或部分而不背离本发明的教导。
为便于描述,这里可以使用诸如“在…之下”、“在…下面”、“下”、“在…之上”、“上”等空间相对性术语来描述如图中所示的一个元件或特征与另一个(些)元件或特征的关系。将理解,空间相对性术语旨在涵盖除图中示出的取向之外,器件在使用或操作中的不同取向。例如,如果附图中的器件被翻转,则被描述为“在”其他元件或特征“之下”或“下面”的元件将会在其他元件或特征“上方”。因此,示例性术语“在…下面”可以涵盖之上和之下两种取向。器件可以以别的方式取向(旋转90度或其他取向),这里所用的空间相对性描述符被相应地解释。
这里所用的术语仅是为了描述特定实施例,并非要限制本发明。在这里使用时,除非上下文另有明确表述,否则单数形式“一”和“该”也旨在包括复数形式。将进一步理解,当在本说明书中使用时,术语“包括”和/或“包含”表明所述特征、整体、步骤、操作、元件和/或组件的存在,但不排除一个或多个其他特征、整体、步骤、操作、元件、组件和/或其组合的存在或增加。
除非另行定义,这里使用的所有术语(包括技术术语和科学术语)都具有本发明所属领域内的普通技术人员所通常理解的相同含义。将进一步理解,诸如通用词典中所定义的术语,否则应当被解释为具有与它们在相关领域的语境中 的含义相一致的含义,而不应被解释为理想化或过度形式化的意义,除非在此明确地如此定义。
请参阅图1,本发明第一较佳实施方式提供一种液晶显示器下基板组件100。所述液晶显示器下基板组件100用于与液晶显示器上基板组件(未示出)进行装配以构成液晶显示器。所述液晶显示器下基板组件100包括承载板10、第一配相垫11、第一配相线12及第一组具有导电功能的转接垫13。所述第一配相垫11、所述第一配相线12及第一组转接垫13均设置于所述承载板10上。所述第一配相垫11电连接所述第一配相线12,以接收第一电压信号,并将所述第一电压信号传输至所述第一配相线12。所述第一组转接垫13间隔地电连接至所述第一配相线12上,用于接收所述第一电压信号,以当所述液晶显示器下基板组件100与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极。所述第一组转接垫13与所述第一配相线12的连接部分14及所述第一组转接垫13均未与所述承载板10上除所述第一配相线12以外的其他任何配相线相交。
需要说明的是,所述承载板10上还设置有若干条配相线(未示出),以为所述液晶显示器下基板组件100与所述液晶显示器上基板组件之间的液晶进行配相。所述第一组转接垫13与所述第一配相线12的连接部分14及所述第一组转接垫13均未与所述承载板10上除所述第一配相线12以外的其他任何配相线相交即表明所述第一组转接垫13与所述第一配相线12的连接部分14及所述第一组转接垫13均未跨接所述承载板10上设置的若干条配相线。
其中,所述液晶显示器下基板组件为阵列基板组件。所述液晶显示器上基板组件为彩色滤波基板组件。通常所述彩色滤波基板组件的彩色滤波基板上的电压是由所述阵列基板组件提供,故需要从所述第一配相垫输入所述第一电压信号给所述彩色滤波基板上的公共电极。所述承载板10为绝缘板体,优选为玻璃板。所述阵列基板组件还包括阵列基板。所述阵列基板设置于所述承载板10,以对应所述彩色滤波基板。同样的,所述彩色滤波基板组件也包括承载板及设置于所述承载板上的彩色滤波基板。
需要说明的是,本申请并未将所述液晶显示器下基板组件100一定限定为阵列基板组件,如果根据实际需要或技术的进步,所述阵列基板上的电压需要 由所述彩色滤波基板提供时,所述液晶显示器下基板组件100的结构也适用于所述彩色滤波基板组件,则所述液晶显示器下基板组件100也可以为所述彩色滤波基板组件。
在本实施方式中,所述液晶显示器下基板组件100包括承载板10、第一配相垫11、第一配相线12及第一组具有导电功能的转接垫13。所述第一配相垫11、所述第一配相线12及第一组转接垫13均设置于所述承载板10上。所述第一配相垫11电连接所述第一配相线12,以接收第一电压信号,并将所述第一电压信号传输至所述第一配相线12。所述第一组转接垫13间隔地电连接至所述第一配相线12上,用于接收所述第一电压信号,以当所述液晶显示器下基板组件100与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极。所述第一组转接垫13与所述第一配相线12的连接部分14及所述第一组转接垫13均未与所述承载板10上除所述第一配相线12以外的其他任何配相线相交,表明所述第一组转接垫13与所述第一配相线12的连接部分14及所述第一组转接垫13均未跨接所述承载板10上任何配相线。因此,所述第一组转接垫13与所述第一配相线12的连接部分14及所述第一组转接垫13处不会产生静电,即不会影响所述液晶显示器下基板组件100与所述液晶显示器上基板组件之间的电场分布,从而避免设置于所述液晶显示器下基板组件100与所述液晶显示器上基板组件之间的液晶出现配相不良的问题。
进一步地,在本实施方式中,所述第一组转接垫13中的每个转接垫均通过第一导线连接至所述第一配相线12。所述第一导线为所述第一组转接垫13与所述第一配相线12之间的连接部分14。
在其他的实施方式中,所述第一组转接垫13也可以设置于所述第一配相线12上。所述第一配相线12与所述第一组转接垫13重叠的部分为所述第一组转接垫13与所述第一配相线12之间的连接部分14。
请参阅图2,本发明第二较佳实施方式提供一种液晶显示器下基板组件200。所述第二较佳实施方式提供的液晶显示器下基板组件200与第一较佳实施方式提供的液晶显示器下基板100相似,两者的区别在于:在第二较佳实施方式中,所述液晶显示器下基板组件200还包括第二配相垫210、第二配相线 220及第二组具有导电功能的转接垫230。所述第二配相垫210、所述第二配相线220及所述第二组转接垫230均设置于所述承载板10上。所述第二配相垫210电连接所述第二配相线220,以接收所述第一电压信号,并将所述第一电压信号传输至所述第二配相线220。所述第二组转接垫230间隔地电连接至所述第二配相线220上,以接收所述第一电压信号,以当所述液晶显示器下基板组件200与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第二组公共电极。所述第二组转接垫230与所述第二配相线220的连接部分240及所述第二组转接垫230均未与所述承载板10上除所述第二配相线220以外的其他任何配相线相交。
其中,所述第二组转接垫230中的每个转接垫均通过第二导线连接至所述第二配相线220。所述第二导线为所述第二组转接垫230与所述第二配相线220之间的连接部分240。
在其他的实施方式中,所述第二组转接垫230也可以设置于所述第二配相线220上。所述第二配相线220与所述第二组转接垫230重叠的部分为所述第二组转接垫230与所述第二配相线220之间的连接部分240。
在本实施方式中,所述第二组转接垫230与所述第二配相线220的连接部分240及所述第二组转接垫230均未与所述承载板10上除所述第二配相线以外的其他任何配相线相交,表明所述第二组转接垫230与所述第二配相线220的连接部分240及所述第二组转接垫230均未跨接所述承载板10上任何配相线。因此,所述第二组转接垫230与所述第二配相线220的连接部分240及所述第二组转接垫230处不会产生静电,即不会影响所述液晶显示器下基板组件200与所述液晶显示器上基板组件之间的电场分布,从而避免设置于所述液晶显示器下基板组件200与所述液晶显示器上基板组件之间的液晶出现配相不良的问题。另外,所述液晶显示器下基板组件200增加了所述第二配相线220及电连接至所述第二配相线220的第二组转接垫230,即也给所述液晶显示器上基板组件的第二组公共电极提供了电压。因此所述液晶显示器下基板组件200提升了所述液晶显示器上基板的电压的均匀性。
进一步地,所述第一配相线12及所述第二配相线220围绕所述承载板10的周边排布。所述第一及第二组转接垫13及230中每相连的两个转接垫之间 的间隔相同,使得所述第一及第二组转接垫13及230均匀地排布于所述承载板10的周边,从而进一步地增强了所述液晶显示器上基板组件上的电压的均匀性。
请继续参阅图3,本发明第三较佳实施方式提供一种液晶显示器下基板组件300。所述第三较佳实施方式提供的液晶显示器下基板组件300与第二较佳实施方式提供的液晶显示器下基板200相似,两者的区别在于:在第三较佳实施方式中,所述液晶显示器下基板组件300还包括第三配相垫310。所述第三配相垫310均设置于所述承载板10上。所述第一配相垫13及所述第二配相垫230位于所述承载板10的第一侧。所述第三配相垫310位于所述承载板10的与所述第一侧相对的第二侧。所述第一配相线12的第一端电连接至所述第一配相垫13。所述第一配相线12的第二端电连接至所述第三配相垫310,并分别通过所述第一配相垫13及所述第三配相垫310接收所述第一电压信号,并将所述第一电压信号传输至所述第一配相线12,以当所述液晶显示器下基板组件300与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极及第二上基板的第一组公共电极。
具体地,所述液晶显示器下基板组件300还包括第一下基板320及第二下基板330。所述第一下基板320及所述第二下基板330沿着从所述承载板10的第一侧到所述第二侧的方向依次设置于所述承载板10上。所述第一下基板320对应所述第一上基板。所述第二下基板330对应所述第二上基板。
需要说明的是,本较佳实施方式中的液晶显示器下基板组件300适用于液晶显示器下基板的制程阶段。其中,所述承载板10具有分割线I,将所述承载板划分为第一子承载板及第二子承载板,进而将所述液晶显示器下基板组件300分割成第一部分及第二部分。其中,所述第一部分与所述第二部分的功能及原理完全相同。即所述第一下基板320与所述第二下基板330相同。所述第一下基板320及所述第一配相垫13位于所述第一子承载板上。所述第二下基板330及所述第三配相垫230位于所述第二子承载板上。当完成显示器下基板组件制程之后,沿着所述分割线I将所述液晶显示器下基板组件300进行切割,形成两个独立的液晶显示器下基板组件,即形成了两个如所述第一较佳实施方 式中的液晶显示器下基板组件100。同样,对应所述液晶显示器下基板组件300的液晶显示器上基板组件也许切割形成对应的两个液晶显示器上基板组件。每个切割后的液晶显示器下基板组件与相应的切割后的液晶显示器上基板组件装配后,在液晶显示器下基板组件与相应的液晶显示器上基板组件之间注入液晶即形成液晶显示器。
其中,所述第一配相垫13可以通过位于所述第一部分的第一配相线及所述第一组转接垫中位于所述第一部分的转接垫输出所述第一电压信号至相应的第一上基板。所述第二配相垫230可以通过位于所述第二部分的第一配相线及所述第一组转接垫中位于所述第二部分的转接垫输出所述第一电压信号至相应的第二上基板。
进一步地,所述液晶显示器下基板组件300还包括第四配相垫340。所述第四配相垫340设置于所述承载板10上,且位于所述承载板10的第二侧。所述第二配相线220的第一端电连接至所述第二配相垫230。所述第二配相线220的第二端电连接至所述第四配相垫340,以分别通过所述第二及第四配相垫230及340接收所述第一电压信号,并将所述第一电压信号传输至所述第二配相线220,以当所述液晶显示器下基板组件300与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件300的第一上基板的第二组公共电极及第二上基板的第二组公共电极。
具体地,当所述液晶显示器下基板组件300与所述液晶显示器上基板组件装配后,所述第一电压信号通过所述第二配相垫230、位于所述第一部分的第二配相线及所述第二组转接垫中位于所述第一部分的转接垫传输至所述液晶显示器上基板组件300的第一上基板的第二组公共电极。所述第一电压信号还通过所述第四配相垫340、位于所述第二部分的第二配相线及所述第二组转接垫中位于所述第二部分的转接垫传输至所述液晶显示器上基板组件300的第二上基板的第二组公共电极。
其中,所述第一配相线12及所述第二配相线220围绕所述承载板10的周边排布。所述第一及第二组转接垫13及230中每相连的两个转接垫之间的间隔相同,使得所述第一及第二组转接垫13及230均匀地排布于所述承载板10的周边,从而进一步地增强了所述液晶显示器上基板组件上的电压的均匀性。
进一步地,所述液晶显示器下基板组件300还包括第五配相垫351、第六配相垫352、第七配相垫353、第八配相垫354、第九配相垫355、第十配相垫356、第三配相线361、第四配相线362及第五配相线363。所述第三配相线361、所述第四配相线362、所述第五配相线363、所述第五配相垫351、所述第六配相垫352、所述第七配相垫353、所述第八配相垫354、所述第九配相垫355、所述第十配相垫356均设置于所述承载板10上。所述第三配相线361的第一端电连接至所述第五配相垫351。所述第三配相线361的第二端电连接至所述第六配相垫352。所述第四配相线362的第一端电连接至所述第七配相垫353。所述第四配相线362的第二端电连接至所述第八配相垫354。所述第五配相线363的第一端电连接至所述第九配相垫355。所述第五配相线363的第二端电连接至所述第十配相垫356。所述第一下基板320包括第一数据线321、第一栅线322及第一公共电极323。所述第二下基板330包括第二数据线331、第二栅线332及第二公共电极333。所述第一及第二数据线321及331均电连接至所述第三配相线361上。所述第一及第二栅线322及332均电连接至所述第四配相线362上。所述第一及第二公共电极323及333均电连接至所述第五配相线363上。
在本实施方式中,所述第一下基板320及所述第二下基板330共用所述第三至第五配相线361-363,而不再是分别占用三个配相线,从而减少了铺设于所述承载板10上的配相线的数量。由于配相线数量减少了,所述承载板10上发生线路跨接的几率也大大减少,从降低了发生液晶配相不良的问题的可能性。
请参阅图1及图4,为本发明较佳实施方式提供的一种液晶显示器400。所述液晶显示器400包括液晶显示器上基板组件410及液晶显示器下基板组件420。所述液晶显示器上基板组件410包括第一承载板(未示出)及设置于所述第一承载板上的第一上基板(未示出)。其中,所述液晶显示器下基板组件420可以为上述第一较佳实施方式提供的液晶显示器下基板组件100。所述液晶显示器下基板组件420的结构及功能与所述液晶显示器下基板组件100的结构和功能完全相同,具体参见上述第一较佳实施方式提供的液晶显示器下基板100的描述,在此不再赘述。当然,所述液晶显示器下基板组件420也可以为 上述第二较佳实施方式提供的液晶显示器下基板组件200。
需要说明的是,所述液晶显示器400还包括液晶430。所述液晶430设置于所述液晶显示器上基板组件410及所述液晶显示器下基板组件420。
本实施方式提供的液晶显示器400包括所述液晶显示器下基板组件100。所述液晶显示器下基板组件100包括承载板10、第一配相垫11、第一配相线12及第一组具有导电功能的转接垫13。所述第一配相垫11电连接所述第一配相线12,以接收第一电压信号,并将所述第一电压信号传输至所述第一配相线12。所述第一组转接垫13间隔地电连接至所述第一配相线12上,用于接收所述第一电压信号,以当所述液晶显示器下基板组件100与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极。所述第一组转接垫13与所述第一配相线12的连接部分14及所述第一组转接垫13均未与所述承载板10上除所述第一配相线12以外的其他任何配相线相交(即没有线路跨接的状况),表明从所述第一组转接垫13与所述第一配相线12的连接部分14及所述第一组转接垫13均未跨接所述承载板10上除所述第一配相线12以外的其他任何配相线。因此,所述第一组转接垫13与所述第一配相线12的连接部分14及所述第一组转接垫13处不会产生静电,即不会影响所述液晶显示器下基板组件100与所述液晶显示器上基板组件之间的电场分布,从而避免设置于所述液晶显示器下基板组件100与所述液晶显示器上基板组件之间的液晶出现配相不良的问题。
以上所述是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本发明的保护范围。

Claims (13)

  1. 一种液晶显示器下基板组件,用于与液晶显示器上基板组件进行装配来组成液晶显示器,其特征在于:所述液晶显示器下基板组件包括承载板、第一配相垫、第一配相线及第一组具有导电功能的转接垫,所述第一配相垫、所述第一配相线及第一组转接垫均设置于所述承载板上,所述第一配相垫电连接所述第一配相线,以接收第一电压信号,并将所述第一电压信号传输至所述第一配相线,所述第一组转接垫间隔地电连接至所述第一配相线上,用于接收所述第一电压信号,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极,所述第一组转接垫与所述第一配相线的连接部分及所述第一组转接垫均未与所述承载板上的除所述第一配相线以外的其他任何配相线相交。
  2. 如权利要求1所述的液晶显示器下基板组件,其特征在于,所述液晶显示器下基板组件还包括第二配相垫、第二配相线及第二组具有导电功能的转接垫,所述第二配相垫、所述第二配相线及所述第二组转接垫均设置于所述承载板上,所述第二配相垫电连接所述第二配相线,以接收所述第一电压信号,并将所述第一电压信号传输至所述第二配相线,所述第二组转接垫间隔地电连接至所述第二配相线上,以接收所述第一电压信号,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第二组公共电极,所述第二组转接垫与所述第二配相线的连接部分及所述第二组转接垫均未与所述承载板上除所述第二配相线以外的其他任何配相线相交。
  3. 如权利要求2所述的液晶显示器下基板组件,其特征在于,所述第一配相线及所述第二配相线围绕所述承载板的周边排布,所述第一及第二组转接垫中每相连的两个转接垫之间的间隔相同,从而使得所述第一及第二组转接垫均匀地排布于所述承载板的周边。
  4. 如权利要求2所述的液晶显示器下基板组件,其特征在于,所述液晶显示器下基板组件还包括第三配相垫,所述第三配相垫均设置于所述承载板 上,所述第一配相垫及所述第二配相垫位于所述承载板的第一侧,所述第三配相垫位于所述承载板的与所述第一侧相对的第二侧,所述第一配相线的第一端电连接至所述第一配相垫,所述第一配相线的第二端电连接至所述第三配相垫,并分别通过所述第一配相垫及所述第三配相垫接收所述第一电压信号,并将所述第一电压信号传输至所述第一配相线,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极及第二上基板的第一组公共电极。
  5. 如权利要求4所述的液晶显示器下基板组件,其特征在于,所述液晶显示器下基板组件还包括第四配相垫,所述第四配相垫设置于所述承载板上,且位于所述承载板的第二侧,所述第二配相线的第一端电连接至所述第二配相垫,所述第二配相线的第二端电连接至所述第四配相垫,以分别通过所述第二及第四配相垫接收所述第一电压信号,并将所述第一电压信号传输至所述第二配相线,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第二组公共电极及第二上基板的第二组公共电极。
  6. 如权利要求4所述的液晶显示器下基板组件,其特征在于,所述液晶显示器下基板组件还包括第一下基板、第二下基板、第五配相垫、第六配相垫、第七配相垫、第八配相垫、第九配相垫、第十配相垫、第三配相线、第四配相线及第五配相线,所述第一基板、所述第二基板、所述第三配相线、所述第四配相线、所述第五配相线、所述第五配相垫、所述第六配相垫、所述第七配相垫、所述第八配相垫、所述第九配相垫、所述第十配相垫均设置于所述承载板上,所述第一下基板对应所述第一上基板,所述第二下基板对应所述第二上基板,所述第三配相线的第一端电连接至所述第五配相垫,所述第三配相线的第二端电连接至所述第六配相垫,所述第四配相线的第一端电连接至所述第七配相垫,所述第四配相线的第二端电连接至所述第八配相垫,所述第五配相线的第一端电连接至所述第九配相垫,所述第五配相线的第二端电连接至所述第十配相垫,所述第一下基板包括第一数据线、第一栅线及第一公共电极,所述第二下基板包括第二数据线、第二栅线及第二公共电极,所述第一及第二数据线 均电连接至所述第三配相线上,所述第一及第二栅线均电连接至所述第四配相线,所述第一及第二公共电极均电连接至所述第五配相线上。
  7. 如权利要求2所述的液晶显示器下基板组件,其特征在于,所述第一组转接垫中的每个转接垫均通过第一导线连接至所述第一配相线,所述第二组转接垫中的每个转接垫均通过第二导线连接至所述第二配相线,所述第一导线为所述第一组转接垫与所述第一配相线之间的连接部分,所述第二导线为所述第二组转接垫与所述第二配相线之间的连接部分。
  8. 如权利要求2所述的液晶显示器下基板组件,其特征在于,所述第一组转接垫设置于所述第一配相线上,所述第二组转接垫设置于所述第二配相线上,所述第一配相线与所述第一组转接垫重叠的部分为所述第一组转接垫与所述第一配相线之间的连接部分,所述第二配相线与所述第二组转接垫重叠的部分为所述第二组转接垫与所述第二配相线之间的连接部分。
  9. 一种液晶显示器,包括液晶显示器上基板组件及液晶显示器下基板组件,所述液晶显示器上基板组件包括第一承载板及设置于所述第一承载板上的第一上基板,所述液晶显示器下基板组件包括第二承载板、第一配相垫、第一配相线及第一组具有导电功能的转接垫,所述第一配相垫、所述第一配相线及第一组转接垫均设置于所述第二承载板上,所述第一配相垫电连接所述第一配相线,以接收第一电压信号,并将所述第一电压信号传输至所述第一配相线,所述第一组转接垫间隔地电连接至所述第一配相线上,用于接收所述第一电压信号,以当所述液晶显示器下基板组件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第一组公共电极,所述第一组转接垫与所述第一配相线的连接部分及所述第一组转接垫均未与所述第二承载板上除所述第一配相线以外的其他任何配相线相交。
  10. 如权利要求9所述的液晶显示器,其特征在于,所述液晶显示器下基板组件还包括第二配相垫、第二配相线及第二组具有导电功能的转接垫,所述第二配相垫、所述第二配相线及所述第二组转接垫均设置于所述第二承载板上,所述第二配相垫电连接所述第二配相线,以接收所述第一电压信号,并将所述第一电压信号传输至所述第二配相线,所述第二组转接垫间隔地电连接至所述第二配相线上,以接收所述第一电压信号,以当所述液晶显示器下基板组 件与所述液晶显示器上基板组件装配后,将所述第一电压信号传输至所述液晶显示器上基板组件的第一上基板的第二组公共电极,所述第二组转接垫与所述第二配相线的连接部分及所述第二组转接垫均未与所述第二承载板上除所述第二配相线以外的其他任何配相线相交。
  11. 如权利要求10所述的液晶显示器,其特征在于,所述第一配相线及所述第二配相线围绕所述承载板的周边排布,所述第一及第二组转接垫中每相邻的两个转接垫之间的间隔相等,从而使得所述第一及第二组转接垫均匀地排布于所述承载板的周边。
  12. 如权利要求10所述的液晶显示器,其特征在于,所述第一组转接垫中的每个转接垫均通过第一导线连接至所述第一配相线,所述第二组转接垫中的每个转接垫均通过第二导线连接至所述第二配相线,所述第一导线为所述第一组转接垫与所述第一配相线之间的连接部分,所述第二导线为所述第二组转接垫与所述第二配相线之间的连接部分。
  13. 如权利要求10所述的液晶显示器,其特征在于,所述第一组转接垫设置于所述第一配相线上,所述第二组转接垫设置于所述第二配相线上,所述第一配相线与所述第一组转接垫重叠的部分为所述第一组转接垫与所述第一配相线之间的连接部分,所述第二配相线与所述第二组转接垫重叠的部分为所述第二组转接垫与所述第二配相线之间的连接部分。
    Figure PCTCN2014092473-appb-100001
    Figure PCTCN2014092473-appb-100002
    Figure PCTCN2014092473-appb-100003
    Figure PCTCN2014092473-appb-100004
    Figure PCTCN2014092473-appb-100005
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